利用临时塔优化完成150 Kv高压架空线重导换塔工程

Muhammad Iqbal
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引用次数: 0

摘要

输电线路既是发电厂的电力疏散,又是变电站之间的纽带,在电网的成功稳定运行和分配中起着重要作用。在当今全球化时代,建设新的输电线路作为满足高电力需求的一种形式有许多障碍,包括居民的拒绝、昂贵的许可安排和非常昂贵的投资成本。重导是一种以最低成本增加传输容量并保证足够质量和可靠性的方法。重导是目前以最少的投资增加导体导电性并获得最大经济效益的最佳解决方案。然而,考虑到重导是使用旧的或现有的线路增加传输容量,并且还需要更换塔,因此需要长时间的停电,这可能会对系统的可靠性产生影响。因此,使用应急塔被认为是缩短停电时间的一种解决方案。应急塔在重导器工作和塔更换中用作工具。通过计算成本预算计划(RAB)和使用Microsoft项目应用程序进行进度分析,进行了一项研究,以确定在使用紧急塔和不使用紧急塔之间完成重导线工作和塔更换所需的时间的比较。从制定的时间计划中,可以知道哪种工作方法使用的时间更短,从而节省或加快停电时间。预计这项研究将缩短使用临时/应急塔进行重导和塔更换工作的时间表,并减少与总运营成本相比的总成本成本,从而以有效的成本缩短停电时间。
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The Use Of Temporary Towers To Optimize The Completion Of Reconductoring And Tower Replacement Of 150 Kv High Voltage Overhead Lines (SUTT)
Transmission lines play an important role in the successful and stable operation and distribution of power grids both for power evacuation from power plants and as a link from one Substation to another. The construction of new transmission lines as a form of meeting high electricity needs in the current era of Globalization has many obstacles, both in terms of rejection from residents, expensive licensing arrangements, and very expensive investment costs. Reconductoring is one of the methods of increasing transmission capacity at minimum cost with an adequate level of quality and reliability. Reconductoring is the best solution today to increase conductor conducting capacity with the least investment and get maximum economic efficiency. However, considering that reconductoring is an addition of transmission capacity using old or existing lines and also requires tower replacement, so an outage with a long duration is needed which is feared to have an impact on system reliability. Therefore, the use of emergency towers is believed to be a solution to shorten the blackout time. Emergency towers are used as tools in reconductor work and tower replacement. A study was conducted by calculating the Cost Budget Plan (RAB)  and schedule analysis using  the Microsoft Project Application to  determine the comparison of the duration of time needed to complete reconductoring work and tower replacement between using an emergency tower and without an emergency tower. From the time schedule made, it will be known which work method uses a shorter duration of time so that it can save or speed up the blackout time. This study is expected to produce a shorter schedule of reconductoring and tower replacement work using temporary/emergency towers and with a smaller RAB compared to Total Operating Costs so as to shorten the duration of the outage time at an efficient cost.
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